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◆ Géotechnique Letters2026-03-18· Dissolution

Retreat to advance: self-blocking enables efficient mineral replacement

A. Budek, Tomasz Szawełło, Vaughan R. Voller, P. Szymczak

原始摘要(英文原文)· Original abstract
Mineral replacement reactions under advective flow often suffer from severe spatial inefficiency: dissolution causes the flow to self-focus into a few dominant wormholes that bypass the surrounding matrix, leaving most of the rock unreplaced. Here we show—through two-dimensional pore-network simulations—that replacement can be effective in two regimes. The first arises when the precipitation rate significantly exceeds the dissolution rate, leading to in situ replacement in which a uniform front of the secondary mineral advances through the matrix. The second, exploratory mode, occurs when the system repeatedly self-blocks and re-routes. In this regime, each channel lives only long enough to deliver reactant a short distance ahead of the front before its tip is cemented by the product phase; pressure re-routes through an adjacent corridor, and the cycle begins anew. Over time, the replacement front advances as a mosaic of overlapping micro-fronts, distributing the secondary mineral almost uniformly. We derive design criteria for achieving exploratory-mode behaviour and discuss implications for both natural and engineered reactive-infiltration systems.
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Retreat to advance: self-blocking enables efficient mineral replacement — 科研速览 Science Skim